Spectroscopy
The use of the absorption, emission, or scattering of electromagnetic radiation by atoms or molecules (or atomic or molecular ions) to qualitatively or quantitatively study the atoms or molecules, or to study physical processes. Virginia Tech
See Also: Dissolved Gas, Terahertz
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Impedance Spectroscopy
NuVant EZware-EIS Software Package
The NuVant EZware-EIS software package activates Electrochemical Impedance Spectroscopy on the EZstat-Pro, Powerstat-05 and -20 potentiostat/galvanostats. EZware-EIS exports the impedance data to a file format to accommodate free third party EIS analysis software. EZware-EIS is a user-friendly interface that allows selection of the proper scanning parameters, collect the impedance spectra, display data in Nyquist and/or Bode plots and export data in the proper data format for use in EIS analysis software.
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Spectroscopy Software for Software Control and Data Acquisition
HORIBA Scientific offers a number of choices for software control and data acquisition for all of our components and custom spectroscopy solutions.
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Energy Dispersive X-ray Fluorescence Spectroscopy
Energy Dispersive X-ray Fluorescence Spectroscopy
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Saturable Spectroscopy Laser Lock Module
A compact, mechanically-robust laser frequency reference.
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X-ray Photoelectron Spectroscopy Analysis (XPS Analysis)
Rocky Mountain Laboratories, Inc.
X-ray photoelectron spectroscopy (XPS Analysis) also called Electron Spectroscopy for Chemical Analysis (ESCA) is a chemical surface analysis method. XPS measures the chemical composition of the outermost 100 Å of a sample. Measurements can be made at greater depths by ion sputter etching to remove surface layers.
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Spectroscopy & Scientific Analysis Systems
Advancing Knowledge. Empowering Breakthroughs. Our spectroscopy instruments and software help advance knowledge and understanding of radioactive materials, empowering the next wave of breakthrough science and innovation.
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Versatile AFM Optical Coupling
TRIOS
The TRIOS platform is an advanced research instrument that provides the entry path for researchers in materials science, biology, spectroscopy and photonics. TRIOS is the most versatile optical coupling platform providing three ports for optical spectroscopy measurements with top-down, side (oblique) and inverted accesses to the AFM tip and sample.If you work with opaque and/or transparent samples, either in air or in liquid looking at nanoscale structures and near-field optical properties investigation, the TRIOS platform is the right solution for you. It perfectly combines upright optical, inverted optical, and atomic force microscopies, and unleash all the power of both techniques providing instrument adjustment and measurement automation, high resolution and integration flexibility. Such performance is only available from HORIBA.
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Materials Lab XM
The Materials Lab XM product provides a fully integrated reference grade time domain and AC measurement platform. No need to switch sample connections between techniques. Time domain measurements include I-V (current voltage) characterization as well as fast pulse techniques. AC testing techniques include everything from single-sine analysis, to multisine / Fast Fourier Transform for faster low frequency analysis, to harmonics and intermodulation for testing linearity and breakdown of materials. Measurements of electrical impedance spectroscopy (EIS), admittance, permittivity and capacitance are all provided from the XM-studio MTS software platform, together with integrated equivalent circuit analysis functionality.
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Advanced Spectroscopy System
Nuclear Physics is the field of physics that studies atomic nuclei and their constituents and interactions. We offer Geiger-Mueller tube systems for investigating the statistics of radioactive decay, as well as scintillator based systems for gamma spectroscopy.
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FTIR Analysis
Anton Paar offers state-of-the-art Fourier-transform infrared (FTIR) instrumentation with the possibility to automate and connect to other Anton Paar benchmark instruments. It combines FTIR spectroscopy with comprehensive data analysis to provide rapid results and increase efficiency in the laboratory. A high-resolution touchscreen with a user interface inspired by modern smartphones enables operators to conduct the most intuitive FTIR analysis available on the market. Anton Paar’s FTIR specialists and a worldwide service network are ready to support you with your spectroscopy applications.
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Scanning Probe Microscopy
SPECS Surface Nano Analysis GmbH
As Scanning Probe Microscopy (SPM) is a key tool for nanotechnology, SPECS offers dedicated solutions for highly demanding requirements.In UHV, strong emphasis lies on spectroscopic methods such as scanning tunneling spectroscopy and inelastic tunneling spectroscopy as well as single atom and molecule manipulation. With the invention of a Joule-Thomson cryostat by Prof. Wulf Wulfhekel, SPECS now offers the JT-STM , operating sample and sensors in thermal equilibrium below 1K with optional high magnetic field.
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Handheld & Portable Raman Spectrometers
Our extensive knowledge and cutting edge technology in the field of Raman spectroscopy has allowed us to focus on solution-oriented products that are designed for non-specialists and provide easy, rapid measurements in a matter of minutes. Our family of best-in-class, fiber-coupled, portable laboratory Raman systems offers you unprecedented sampling utility, allowing you to do more with less.
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Microscope Spectrophotometer
508 PV
The 508 PV™ Microscope Spectrophotometer is designed to add spectroscopy, color imaging, thin film thickness measurement and colorimetry capabilities to your optical microscope or probe station. It can also be used to upgrade an older microspectrometer with cutting edge optics, electronics and software.
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Atomic Spectroscopy
Tens of thousands of installations worldwide rely on PerkinElmer spectrometers to obtain accurate results from inorganic elemental analyses quickly, efficiently, effortlessly. No matter what your field, application or sample type, we have the tools and expertise to help -- all based on more than 50 years at the forefront of atomic spectroscopy technology. Take advantage of our complete array of solutions for unparalleled performance, accuracy, and confidence.
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Molecular Spectroscopy
Molecular Spectroscopy requires a range of technologies, including pick-and-place automation for moving sample tubes, sample injection automation to reduce sample contamination and consumption of rinse-solutions, and basic autosamplers for delivering samples to the analyzer. A variety of pumping technologies are also used to manage the delivery of samples and rinse solutions as needed.
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Small, Uncooled InGaAs line-scan camera with rectangular pixels
Lynx R Series
The Lynx R series, based on an in-house developed linear InGaAs detector, is a high-performance short-wave infrared (SWIR) camera providing high speed and quality line-scan imaging.The Lynx R cameras are able to image line rates up to 40 kHz, for demanding spectroscopy applications.The camera comes with an industry standard CameraLink or GigE Vision interface.Benefits & Features• High speed line-scan imaging up to 40 kHz (10 kHz for the 2048)• High resolution 1024/2048 Rectangular pixels option (12.5μm x 250μm)• CameraLink or GigE Vision interfacing
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Laser-induced Breakdown Spectroscopy (LIBS)
LIBS
HORIBA designs and manufactures for Laser-induced Breakdown Spectroscopy (LIBS) very high resolution OEM spectrometers. Thanks to a low stray light aberrations corrected concave holographic grating (Jobin Yvon Technology), HORIBA LIBS spectrometer offers in a ~90x70x30mm footprint (without electronics) a very robust and accurate spectrometer.Adopt the HORIBA LIBS spectrometer to monitor the elemental fingerprint of your liquid, solid or gas samples.
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Spectrophotometer Cuvettes
Cuvettes for absorbance spectroscopy made from UV Quartz (190-2,500nm), IR Quartz (220-2,500nm), Optical Glass (340-2,500nm) and Pyrex Glass (340-2,500nm).
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Charge Coupled Device (CCD) Standard Image Sensors
Teledyne e2v is the leading supplier of scientific grade Charge Coupled Device (CCD) image sensors for the most challenging low light imaging and spectroscopy applications.
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Vacuum UV Measurement
As a spectrometer, we have been manufacturing various vacuum ultraviolet spectroscopy systems mainly based on the Seya Hokaoka type spectrometer since 1977 when the company was established.The newly developed KV series is a system that can measure up to 120 nm with a nitrogen gas purge only by using a special optical element and a spectroscope of newly developed optical arrangement, eliminating the need for a vacuum pump and the like.
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Near-infrared Spectroscopy Evaluation Module
DLP® NIRscan™ Nano
The DLP NIRscan Nano is a compact battery-operated evaluation module (EVM) for portable near-infrared spectroscopy solutions. Featuring the DLP2010NIR digital micromirror device (DMD), the NIRscan Nano supports Bluetooth low energy to enable mobile lab measurements for hand-held spectrometers.
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FTIR Gas Analyzers
FTIR Spectroscopy gas analyzer instruments from MKS Instruments are capable of ppb to ppm sensitivity for multiple gas species in a variety of gas analysis applications, such as toxic gas detection, automotive emissions measurement, and monitoring stack emissions, processes, ambient air, purity, and selective catalytic reduction performance.
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Microwave Plasma Atomic Emission Spectroscopy / MP-AES Systems
Agilent’s industry-leading microwave plasma-atomic emission spectrometer (MP-AES) systems are powerful, cost-efficient and easy-to-use for a wide range of applications from routine analysis to complex precious metals analysis. By running on air, Agilent MP-AES systems both cost less and are safer than alternative methods that rely on flammable gases. The innovative Agilent 4210 MP-AES system offers higher sensitivity and faster throughput capabilities than flame atomic absorption.
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IndiRAM CTR With Quantum Characterizer
The IndiRAM CTR Raman/PL system with Quantum Emitter Microscope is a multi-purpose system capable of performing Quantum Emitter Characterization, Raman, Photoluminescence as well as Optical Emission Spectroscopy. The system consists of a Pulse Laser along with a single photon counting module (SPCM), a Pulse Synchronization unit, Motorized Scanning stage and a research grade microscope (Upright or Inverted) for TCSPC measurements. Along with these, it also contains a High throughput Spectrometer with a TE Cooled CCD and an optics box assembly to perform Raman/PL and OES Spectroscopy and Microscopy. obtained after the multiple set of experiments gives the lifetime function.
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Versatile Hyperspectral Cathodoluminescence
H-CLUE
The H-CLUE direct coupled solution offers the ultimate performance for Cathodoluminescence Imaging and Spectroscopy analysis.Embedding field-proven optical components of HORIBA Scientific, H-CLUE overcomes its competition in terms of sensitivity over wide spectral ranges from FUV to extended NIR.
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FTIR Spectrometers
Fourier Transform Infrared (FTIR) spectroscopy is a non-destructive analytical technique that can be applied to solid, liquid, and gas samples. Measuring the mid-IR spectral range, from 4,000 cm-1 to 400 cm-1, the technique detects vibrational transitions of molecules, therefore an FTIR spectrum contains vibrational information on the sample studied.
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Near-Field Detection Module for Imaging
Reflection
Reflective AFM-tip illuminationDetection optimized for high-performance near-field imagingEnables optical amplitude and phase resolved near field measurementsNear-field spectroscopy possible via sequential imaging (Requires tunable illumination unit)Patented background-free detection technologySuited for visible & infrared wavelength range (0.5 20 m)Version for infrared & THz wavelength range (5 300 m) availableSupported AFM scan-speed: up to 20 m/s @ highest spatial resolution
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Raman Spectroscopy
Raman spectroscopy is a form of vibrational spectroscopy, like infrared (IR) absorption, that provides detailed chemical and structural characterisation. The Raman technique has the benefit of being non-destructive and requiring no sample preparation.
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Energy Dispersive X-ray Spectroscopy
EDS
Materials Evaluation and Engineering
EDS is an elemental chemical microanalysis technique performed in conjunction with each of the SEMs at MEE. Features or phases as small as about 1 micron can be analyzed.





























